In vitro characterization of mutant yeast RNA polymerase II with reduced binding for elongation factor TFIIS

被引:43
作者
Wu, JS
Awrey, DE
Edwards, AM
Archambault, J
Friesen, JD
机构
[1] UNIV TORONTO,BANTING & BEST DEPT MED RES,TORONTO,ON M5G 1L6,CANADA
[2] UNIV TORONTO,DEPT MED & MOL GENET,TORONTO,ON M5G 1L6,CANADA
[3] MCMASTER UNIV,INST MOL BIOL & BIOTECHNOL,CANC RES GRP,HAMILTON,ON L8N 3Z5,CANADA
关键词
D O I
10.1073/pnas.93.21.11552
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
We have reported previously the isolation and genetic characterization of mutations in the gene encoding the largest subunit of yeast RNA polymerase II (RNAPII), which lead to 6-azauracil (6AU)-sensitive growth. It was suggested that these mutations affect the functional interaction between RNAPII and transcription-elongation factor TFIIS because the 6AU-sensitive phenotype of the mutant strains was similar to that of a strain defective in the production of TFIIS and can be suppressed by increasing the dosage of the yeast TFIIS-encoding gene, PPR2. RNAPIIs were purified and characterized from two independent 6AU-sensitive yeast mutants and from wild-type (wt) cells. In vitro, in the absence of TFIIS, the purified wt polymerase and the two mutant polymerases showed similar specific activity in polymerization, readthrough at intrinsic transcriptional arrest sites and nascent RNA cleavage. In contrast to the wt polymerase, both mutant polymerases were not stimulated by the addition of a 3-fold molar excess of TFIIS in assays of promoter-independent transcription, readthrough or cleavage. However, stimulation of the ability of the mutant RNAPIIs to cleave nascent RNA and to read through intrinsic arrest sites was observed at TFIIS:RNAPII molar ratios greater than 600:1. Consistent with these findings, the binding affinity of the mutant polymerases for TFIIS was found to be reduced by more than 50-fold compared with that of the wt enzyme. These studies demonstrate that TFIIS has an important role in the regulation of transcription by yeast RNAPII and identify a possible binding site for TFIIS on RNAPII.
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页码:11552 / 11557
页数:6
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